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首页> 外文期刊>AIP Advances >Electrical-field and spin-transfer torque effects in CoFeB/MgO-based perpendicular magnetic tunnel junction
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Electrical-field and spin-transfer torque effects in CoFeB/MgO-based perpendicular magnetic tunnel junction

机译:基于CoFeB / MgO的垂直磁隧道结中的电场和自旋转移转矩效应

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The electric-field (E) dependence of the magnetoresistance (RH) loops for top-pinned perpendicular CoFeB/MgO-based magnetic tunnel junctions (MTJs) in the presence of a spin-transfer torque (STT)-current was measured. The E effects were distinguished from the STT-current effects using a micromagnetic simulation. The coercive field (Hc) decreased and the RH loop shifted as both the positive and negative bias E increased owing to the STT current. Furthermore, E-assisted switching for an MTJ with a diameter of 20 nm, which exhibited a nearly coherent magnetization reversal, was demonstrated using micromagnetic simulation.
机译:在存在自旋传递扭矩(STT)电流的情况下,测量了顶部固定的垂直CoFeB / MgO基磁性隧道结(MTJ)的磁阻(RH)回路的电场(E)依赖性。使用微磁模拟将E效应与STT电流效应区分开。由于STT电流,随着正偏压E和负偏压E的增加,矫顽场(Hc)减小并且RH环路偏移。此外,使用微磁仿真证明了直径为20 nm的MTJ的电子辅助开关,该开关表现出几乎相干的磁化反转。

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